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Molecular recognition of pyruvic acid and folic acid in whole blood

机译:全血中丙酮酸和叶酸的分子识别

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摘要

Pyruvic and folic acids need to be monitored in both young and old persons, not only to assess the ageing state, but also to diagnose illnesses at an early stage, e.g., diabetes. Therefore, there is a need to develop highly reliable tools and methods of analysis for their determination in biological fluids (e.g., whole blood samples). Three new stochastic microsensors based on the physical immobilization of α, β, and γ-cyclodextrins (CD) in the paste of a TiO2Pt–graphene nanocomposite (TiO2Pt/rGO) were prepared; the novelty of the stochastic sensors used for the assay of the biomolecules from biological fluids is given by the utilization of TiO2Pt–graphene nanocomposite as the matrix; this matrix supported the CDs' channels used for stochastic sensing, better than other materials. The proposed microsensors are able to recognize and determine pyruvate and folate in whole blood samples at very low concentrations. The recovery tests performed for the assay of pyruvate and folate in whole blood samples proved that they can be assayed with a recovery higher than 98.00% and an RSD value lower than 1.00%.
机译:年轻人和老年人都需要监测丙酮酸和叶酸,不仅可以评估其衰老状态,还可以在早期诊断疾病,例如糖尿病。因此,需要开发高度可靠的分析工具和分析方法,以便在生物流体(例如,全血样品)中进行测定。基于TiO 2 Pt-石墨烯纳米复合材料(TiO )糊料中α,β和γ-环糊精(CD)的物理固定化的三种新型随机微传感器> 2 Pt / rGO);以TiO 2 Pt-石墨烯纳米复合材料为基质,用于测定生物流体中生物分子的随机传感器的新颖性。该矩阵比其他材料更好地支持CD的用于随机感测的通道。所提出的微传感器能够识别和确定全血样品中低浓度的丙酮酸和叶酸。对全血样品中的丙酮酸和叶酸进行测定的回收率测试证明,回收率高于98.00%,RSD值低于1.00%。

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